English

Revealing the competition between charge-density wave and superconductivity in CsV$_3$Sb$_5$ through uniaxial strain

Superconductivity 2021-10-27 v2 Strongly Correlated Electrons

Abstract

In this paper we report the impact of uniaxial strain ε\varepsilon applied along the crystalline aa axis on the newly discovered kagome superconductor CsV3_3Sb5_5. At ambient conditions, CsV3_3Sb5_5 shows a charge-density wave (CDW) transition at TCDW=94.5T_{\rm CDW}=94.5 K and superconducts below TC=3.34T_C = 3.34 K. In our study, when the uniaxial strain ε\varepsilon is varied from 0.90%-0.90\% to 0.90%0.90\%, TCT_C monotonically increases by 33%\sim 33\% from 3.0 K to 4.0 K, giving rise to the empirical relation TC(ε)=3.4+0.56ε+0.12ε2T_C (\varepsilon)=3.4+0.56\varepsilon+0.12\varepsilon^2. On the other hand, for ε\varepsilon changing from 0.76%-0.76\% to 1.26%1.26\%, TCDWT_{\rm CDW} decreases monotonically by 10%\sim 10\% from 97.5 K to 87.5 K with TCDW(ε)=94.54.72ε0.60ε2T_{\rm CDW}(\varepsilon)=94.5-4.72\varepsilon-0.60\varepsilon^2. The opposite response of TCT_C and TCDWT_{\rm CDW} to the uniaxial strain suggests strong competition between these two orders. Comparison with hydrostatic pressure measurements indicate that it is the change in the cc-axis that is responsible for these behaviors of the CDW and superconducting transitions, and that the explicit breaking of the sixfold rotational symmetry by strain has a negligible effect. Combined with our first-principles calculations and phenomenological analysis, we conclude that the enhancement in TCT_C with decreasing cc is caused primarily by the suppression of TCDWT_{\rm CDW}, rather than strain-induced modifications in the bare superconducting parameters. We propose that the sensitivity of TCDWT_{\rm CDW} with respect to the changes in the cc-axis arises from the impact of the latter on the trilinear coupling between the M1+M_1^+ and L2L_2^- phonon modes associated with the CDW. Overall, our work reveals that the cc-axis lattice parameter, which can be controlled by both pressure and uniaxial strain, is a powerful tuning knob for the phase diagram of CsV3_3Sb5_5.

Keywords

Cite

@article{arxiv.2107.04545,
  title  = {Revealing the competition between charge-density wave and superconductivity in CsV$_3$Sb$_5$ through uniaxial strain},
  author = {Tiema Qian and Morten H. Christensen and Chaowei Hu and Amartyajyoti Saha and Brian M. Andersen and Rafael M. Fernandes and Turan Birol and Ni Ni},
  journal= {arXiv preprint arXiv:2107.04545},
  year   = {2021}
}

Comments

8 pages, 5 figures